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Minimal information for studies of extracellular vesicles (MISEV2023) : from basic to advanced approaches

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Abstract
Extracellular vesicles (EVs), through their complex cargo, can reflect the state of their cell of origin and change the functions and phenotypes of other cells. These features indicate strong biomarker and therapeutic potential and have generated broad interest, as evidenced by the steady year-on-year increase in the numbers of scientific publications about EVs. Important advances have been made in EV metrology and in understanding and applying EV biology. However, hurdles remain to realising the potential of EVs in domains ranging from basic biology to clinical applications due to challenges in EV nomenclature, separation from non-vesicular extracellular particles, characterisation and functional studies. To address the challenges and opportunities in this rapidly evolving field, the International Society for Extracellular Vesicles (ISEV) updates its 'Minimal Information for Studies of Extracellular Vesicles', which was first published in 2014 and then in 2018 as MISEV2014 and MISEV2018, respectively. The goal of the current document, MISEV2023, is to provide researchers with an updated snapshot of available approaches and their advantages and limitations for production, separation and characterisation of EVs from multiple sources, including cell culture, body fluids and solid tissues. In addition to presenting the latest state of the art in basic principles of EV research, this document also covers advanced techniques and approaches that are currently expanding the boundaries of the field. MISEV2023 also includes new sections on EV release and uptake and a brief discussion of in vivo approaches to study EVs. Compiling feedback from ISEV expert task forces and more than 1000 researchers, this document conveys the current state of EV research to facilitate robust scientific discoveries and move the field forward even more rapidly.
Keywords
ectosomes, exosomes, extracellular vesicles, extracellular particles, guidelines, microparticles, microvesicles, minimal information requirements, MISEV, reproducibility, rigor, standardisation, FLUID PROTEIN-CONCENTRATION, HUMAN CEREBROSPINAL-FLUID, DOUBLE-STRANDED DNA, MASS-SPECTROMETRY, FLOW-CYTOMETRY, IN-VITRO, SYSTEM SUITABILITY, RAMAN-SPECTROSCOPY, PROTEOMIC ANALYSIS, MEMBRANE-VESICLES

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Citation

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MLA
Welsh, Joshua A., et al. “Minimal Information for Studies of Extracellular Vesicles (MISEV2023) : From Basic to Advanced Approaches.” JOURNAL OF EXTRACELLULAR VESICLES, vol. 13, no. 2, 2024, doi:10.1002/jev2.12404.
APA
Welsh, J. A., Goberdhan, D. C. I., O’Driscoll, L., Buzas, E. I., Blenkiron, C., Bussolati, B., … MISEV Consortium, [missing]. (2024). Minimal information for studies of extracellular vesicles (MISEV2023) : from basic to advanced approaches. JOURNAL OF EXTRACELLULAR VESICLES, 13(2). https://doi.org/10.1002/jev2.12404
Chicago author-date
Welsh, Joshua A., Deborah C. I. Goberdhan, Lorraine O’Driscoll, Edit I. Buzas, Cherie Blenkiron, Benedetta Bussolati, Houjian Cai, et al. 2024. “Minimal Information for Studies of Extracellular Vesicles (MISEV2023) : From Basic to Advanced Approaches.” JOURNAL OF EXTRACELLULAR VESICLES 13 (2). https://doi.org/10.1002/jev2.12404.
Chicago author-date (all authors)
Welsh, Joshua A., Deborah C. I. Goberdhan, Lorraine O’Driscoll, Edit I. Buzas, Cherie Blenkiron, Benedetta Bussolati, Houjian Cai, Dolores Di Vizio, Tom A. P. Driedonks, Uta Erdbrügger, Juan M. Falcon‐Perez, Qing‐Ling Fu, Andrew F. Hill, Metka Lenassi, Sai Kiang Lim, Mỹ G. Mahoney, Sujata Mohanty, Andreas Möller, Rienk Nieuwland, Takahiro Ochiya, Susmita Sahoo, Ana C. Torrecilhas, Lei Zheng, Andries Zijlstra, Sarah Abuelreich, Reem Bagabas, Paolo Bergese, Esther M. Bridges, Marco Brucale, Dylan Burger, Randy P. Carney, Emanuele Cocucci, Federico Colombo, Rossella Crescitelli, Edveena Hanser, Adrian L. Harris, Norman J. Haughey, An Hendrix, Alexander R. Ivanov, Tijana Jovanovic‐Talisman, Nicole A. Kruh‐Garcia, Vroniqa Ku’ulei‐Lyn Faustino, Diego Kyburz, Cecilia Lässer, Kathleen M. Lennon, Jan Lötvall, Adam L. Maddox, Elena S. Martens‐Uzunova, Rachel R. Mizenko, Lauren A. Newman, Andrea Ridolfi, Eva Rohde, Tatu Rojalin, Andrew Rowland, Andras Saftics, Ursula S. Sandau, Julie A. Saugstad, Faezeh Shekari, Simon Swift, Dmitry Ter‐Ovanesyan, Juan P. Tosar, Zivile Useckaite, Francesco Valle, Zoltan Varga, Edwin van der Pol, Martijn J. C. van Herwijnen, Marca H. M. Wauben, Ann M. Wehman, Sarah Williams, Andrea Zendrini, Alan J. Zimmerman, Clotilde Théry, Kenneth W. Witwer, Sarah Deville, Bert Dhondt, Lien Lippens, Cláudio Pinheiro, Olivier De Wever, and [missing] MISEV Consortium. 2024. “Minimal Information for Studies of Extracellular Vesicles (MISEV2023) : From Basic to Advanced Approaches.” JOURNAL OF EXTRACELLULAR VESICLES 13 (2). doi:10.1002/jev2.12404.
Vancouver
1.
Welsh JA, Goberdhan DCI, O’Driscoll L, Buzas EI, Blenkiron C, Bussolati B, et al. Minimal information for studies of extracellular vesicles (MISEV2023) : from basic to advanced approaches. JOURNAL OF EXTRACELLULAR VESICLES. 2024;13(2).
IEEE
[1]
J. A. Welsh et al., “Minimal information for studies of extracellular vesicles (MISEV2023) : from basic to advanced approaches,” JOURNAL OF EXTRACELLULAR VESICLES, vol. 13, no. 2, 2024.
@article{01J8S3T14G7YFT1KTFDJXBHGCT,
  abstract     = {{Extracellular vesicles (EVs), through their complex cargo, can reflect the state of their cell of origin and change the functions and phenotypes of other cells. These features indicate strong biomarker and therapeutic potential and have generated broad interest, as evidenced by the steady year-on-year increase in the numbers of scientific publications about EVs. Important advances have been made in EV metrology and in understanding and applying EV biology. However, hurdles remain to realising the potential of EVs in domains ranging from basic biology to clinical applications due to challenges in EV nomenclature, separation from non-vesicular extracellular particles, characterisation and functional studies. To address the challenges and opportunities in this rapidly evolving field, the International Society for Extracellular Vesicles (ISEV) updates its 'Minimal Information for Studies of Extracellular Vesicles', which was first published in 2014 and then in 2018 as MISEV2014 and MISEV2018, respectively. The goal of the current document, MISEV2023, is to provide researchers with an updated snapshot of available approaches and their advantages and limitations for production, separation and characterisation of EVs from multiple sources, including cell culture, body fluids and solid tissues. In addition to presenting the latest state of the art in basic principles of EV research, this document also covers advanced techniques and approaches that are currently expanding the boundaries of the field. MISEV2023 also includes new sections on EV release and uptake and a brief discussion of in vivo approaches to study EVs. Compiling feedback from ISEV expert task forces and more than 1000 researchers, this document conveys the current state of EV research to facilitate robust scientific discoveries and move the field forward even more rapidly.}},
  articleno    = {{e12404}},
  author       = {{Welsh, Joshua A. and Goberdhan, Deborah C. I. and O'Driscoll, Lorraine and Buzas, Edit I. and Blenkiron, Cherie and Bussolati, Benedetta and Cai, Houjian and Di Vizio, Dolores and Driedonks, Tom A. P. and Erdbrügger, Uta and Falcon‐Perez, Juan M. and Fu, Qing‐Ling and Hill, Andrew F. and Lenassi, Metka and Lim, Sai Kiang and Mahoney, Mỹ G. and Mohanty, Sujata and Möller, Andreas and Nieuwland, Rienk and Ochiya, Takahiro and Sahoo, Susmita and Torrecilhas, Ana C. and Zheng, Lei and Zijlstra, Andries and Abuelreich, Sarah and Bagabas, Reem and Bergese, Paolo and Bridges, Esther M. and Brucale, Marco and Burger, Dylan and Carney, Randy P. and Cocucci, Emanuele and Colombo, Federico and Crescitelli, Rossella and Hanser, Edveena and Harris, Adrian L. and Haughey, Norman J. and Hendrix, An and Ivanov, Alexander R. and Jovanovic‐Talisman, Tijana and Kruh‐Garcia, Nicole A. and Ku'ulei‐Lyn Faustino, Vroniqa and Kyburz, Diego and Lässer, Cecilia and Lennon, Kathleen M. and Lötvall, Jan and Maddox, Adam L. and Martens‐Uzunova, Elena S. and Mizenko, Rachel R. and Newman, Lauren A. and Ridolfi, Andrea and Rohde, Eva and Rojalin, Tatu and Rowland, Andrew and Saftics, Andras and Sandau, Ursula S. and Saugstad, Julie A. and Shekari, Faezeh and Swift, Simon and Ter‐Ovanesyan, Dmitry and Tosar, Juan P. and Useckaite, Zivile and Valle, Francesco and Varga, Zoltan and van der Pol, Edwin and van Herwijnen, Martijn J. C. and Wauben, Marca H. M. and Wehman, Ann M. and Williams, Sarah and Zendrini, Andrea and Zimmerman, Alan J. and Théry, Clotilde and Witwer, Kenneth W. and Deville, Sarah and Dhondt, Bert and Lippens, Lien and Pinheiro, Cláudio and De Wever, Olivier and MISEV Consortium, [missing]}},
  issn         = {{2001-3078}},
  journal      = {{JOURNAL OF EXTRACELLULAR VESICLES}},
  keywords     = {{ectosomes,exosomes,extracellular vesicles,extracellular particles,guidelines,microparticles,microvesicles,minimal information requirements,MISEV,reproducibility,rigor,standardisation,FLUID PROTEIN-CONCENTRATION,HUMAN CEREBROSPINAL-FLUID,DOUBLE-STRANDED DNA,MASS-SPECTROMETRY,FLOW-CYTOMETRY,IN-VITRO,SYSTEM SUITABILITY,RAMAN-SPECTROSCOPY,PROTEOMIC ANALYSIS,MEMBRANE-VESICLES}},
  language     = {{eng}},
  number       = {{2}},
  pages        = {{84}},
  title        = {{Minimal information for studies of extracellular vesicles (MISEV2023) : from basic to advanced approaches}},
  url          = {{http://doi.org/10.1002/jev2.12404}},
  volume       = {{13}},
  year         = {{2024}},
}

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